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Live-cell Video Microscopy of Fungal Pathogen Phagocytosis
Published on: January 9, 2013
Contribution of Candida albicans cell wall components to recognition by and escape from murine macrophages
C G J McKenzie1, U Koser, L E Lewis
1College of Life Sciences & Medicine, Institute of Medical Sciences, University of Aberdeen, Foresterhill, Aberdeen AB25 2ZD, United Kingdom.
Abstract:
The pathogenicity of the opportunistic human fungal pathogen Candida albicans depends on its ability to escape destruction by the host immune system. Using mutant strains that are defective in cell surface glycosylation, cell wall protein synthesis, and yeast-hypha morphogenesis, we have investigated three important aspects of C. albicans innate immune interactions: phagocytosis by primary macrophages and macrophage cell lines, hyphal formation within macrophage phagosomes, and the ability to escape from and kill macrophages. We show that cell wall glycosylation is critically important for the recognition and ingestion of C. albicans by macrophages. Phagocytosis was significantly reduced for mutants deficient in phosphomannan biosynthesis (mmn4Delta, pmr1Delta, and mnt3 mnt5Delta), whereas O- and N-linked mannan defects (mnt1Delta mnt2Delta and mns1Delta) were associated with increased ingestion, compared to the parent wild-type strains and genetically complemented controls. In contrast, macrophage uptake of mutants deficient in cell wall proteins such as adhesins (ece1Delta, hwp1Delta, and als3Delta) and yeast-locked mutants (clb2Delta, hgc1Delta, cph1Delta, efg1Delta, and efg1Delta cph1Delta), was similar to that observed for wild-type C. albicans. Killing of macrophages was abrogated in hypha-deficient strains, significantly reduced in all glycosylation mutants, and comparable to wild type in cell wall protein mutants. The diminished ability of glycosylation mutants to kill macrophages was not a consequence of impaired hyphal formation within macrophage phagosomes. Therefore, cell wall composition and the ability to undergo yeast-hypha morphogenesis are critical determinants of the macrophage's ability to ingest and process C. albicans.
Insights
Candida albicans cell wall glycosylation is crucial for macrophage recognition and ingestion. Defects in glycosylation impair the fungus
Area of Science:
- Mycology
- Immunology
- Cell Biology
Background:
- Candida albicans is an opportunistic fungal pathogen.
- Host immune evasion is critical for C. albicans pathogenicity.
- Macrophage interaction is a key aspect of innate immunity against C. albicans.
Purpose of the Study:
- Investigate the role of cell wall components in C. albicans-macrophage interactions.
- Determine how glycosylation, cell wall proteins, and morphogenesis affect phagocytosis, hyphal formation, and macrophage killing.
- Identify key factors for C. albicans immune evasion.
Main Methods:
- Utilized mutant strains of C. albicans with defects in cell surface glycosylation, cell wall protein synthesis, and yeast-hypha morphogenesis.
- Assessed phagocytosis by primary macrophages and cell lines.
- Evaluated hyphal formation within phagosomes.
- Measured the ability of C. albicans to escape from and kill macrophages.
Main Results:
- Cell wall glycosylation is critical for C. albicans recognition and ingestion by macrophages.
- Phosphomannan biosynthesis defects reduced phagocytosis, while O- and N-linked mannan defects increased it.
- Mutants lacking cell wall proteins or locked in yeast form showed similar uptake to wild-type.
- Hypha-deficient strains abrogated macrophage killing; glycosylation mutants significantly reduced it.
Conclusions:
- Cell wall glycosylation is a major determinant of C. albicans phagocytosis by macrophages.
- Yeast-hypha morphogenesis and cell wall composition are critical for C. albicans to evade macrophage-mediated destruction.
- Understanding these interactions can inform strategies against C. albicans infections.
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